Abstract
Strain Co23, an anaerobic spore-forming microorganism, was enriched and isolated from a compost soil on the basis of its ability to grow with 2,3-dichlorophenol (DCP) as its electron acceptor, ortho chlorines were removed from polysubstituted phenols but not from monohalophenols. Growth by chlororespiration was indicated by a growth yield of 3.24 g of cells per mol of reducing equivalents (as 2[H]) from lactate oxidation to acetate in the presence of 3-chloro-4-hydroxybenzoate but no growth in the absence of the halogenated electron acceptor. Other indicators of chlororespiration were the fraction of electrons from the electron donor used for dechlorination (0.67) and the H2 threshold concentration of < 1.0 ppm. Additional electron donors utilized for reductive dehalogenation were pyruvate, formate, butyrate, crotonate, and H2. Pyruvate supported homoacetogenic growth in the absence of an electron acceptor. Strain Co23 also used sulfite, thiosulfate, and sulfur as electron acceptors for growth, but it did not use sulfate, nitrate or fumarate. The temperature optimum for growth was 37 degrees C; however, the rates of dechlorination were optimum at 45 degrees C and activity persisted to temperatures as high as 55 degrees C. The 16S rRNA sequence was determined, and strain Co23 was found to be related to Desulfitobacterium dehalogenans JW/IU DC1 and Desulfitobacterium strain PCE1, with sequence similarities of 97.2 and 96.8%, respectively. The phylogenetic and physiological properties exhibited by strain Co23 place it into a new species designated Desulfitobacterium chlororespirans.
MeSH Terms
Anaerobiosis
Bacteria, Anaerobic/genetics,growth & development,isolation & purification,metabolism
Biodegradation, Environmental
Chlorine/metabolism
Chlorobenzoates
Hydrogen-Ion Concentration
Hydroxybenzoates/metabolism
Lactic Acid/metabolism
Molecular Sequence Data
Oxidation-Reduction
Phylogeny
Pyruvic Acid/metabolism
RNA, Ribosomal, 16S/genetics
Sequence Homology, Nucleic Acid
Soil Microbiology
Spores, Bacterial/isolation & purification
Substrate Specificity
Temperature
Chemicals
Chlorobenzoates
Hydroxybenzoates
RNA, Ribosomal, 16S
Lactic Acid
3-chloro-4-hydroxybenzoate
Chlorine
Pyruvic Acid
Authors & Affiliations
4 authors, click to expand affiliations / ORCID
Sanford R A
Center for Microbial Ecology, Michigan State University, East Lansing 48824-1325, USA.
Cole J R
Löffler F E
Tiedje J M
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